Thermal–hydraulic–mechanical–chemical coupled processes and their numerical simulation: a comprehensive review

With the growing development and utilization of underground space and resources, rock masses exposed to high stresses and pore pressure, large temperature changes, and complex hydraulic–chemical environments have become a research topic of wide interest. Such coupled physical and chemical processes...

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Vydáno v:Acta geotechnica Ročník 18; číslo 12; s. 6253 - 6274
Hlavní autoři: Zhang, Nanlin, Luo, Zhifeng, Chen, Zhangxin, Liu, Fushen, Liu, Pingli, Chen, Weiyu, Wu, Lin, Zhao, Liqiang
Médium: Journal Article
Jazyk:angličtina
Vydáno: Berlin/Heidelberg Springer Berlin Heidelberg 01.12.2023
Springer Nature B.V
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ISSN:1861-1125, 1861-1133
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Abstract With the growing development and utilization of underground space and resources, rock masses exposed to high stresses and pore pressure, large temperature changes, and complex hydraulic–chemical environments have become a research topic of wide interest. Such coupled physical and chemical processes strongly impact the rock mass’s mechanical properties and structural failure. Analyzing and studying rock’s mechanical properties and damage under multi-physics coupled environment can help ensure the safety and efficiency of exploiting underground mineral resources and developing underground space. Thermal–hydraulic–mechanical–chemical (THMC) coupled processes in rock masses have become a hot research topic, and the related numerical and experimental methods have made significant progress. This paper comprehensively reviews and evaluates the latest research progress on THMC coupling models and numerical methods. Finally, we summarize the key points, difficulties, and future THMC multi-physics coupling research directions and provide references for influencing mechanisms research and engineering practice.
AbstractList With the growing development and utilization of underground space and resources, rock masses exposed to high stresses and pore pressure, large temperature changes, and complex hydraulic–chemical environments have become a research topic of wide interest. Such coupled physical and chemical processes strongly impact the rock mass’s mechanical properties and structural failure. Analyzing and studying rock’s mechanical properties and damage under multi-physics coupled environment can help ensure the safety and efficiency of exploiting underground mineral resources and developing underground space. Thermal–hydraulic–mechanical–chemical (THMC) coupled processes in rock masses have become a hot research topic, and the related numerical and experimental methods have made significant progress. This paper comprehensively reviews and evaluates the latest research progress on THMC coupling models and numerical methods. Finally, we summarize the key points, difficulties, and future THMC multi-physics coupling research directions and provide references for influencing mechanisms research and engineering practice.
Author Chen, Zhangxin
Zhao, Liqiang
Liu, Fushen
Luo, Zhifeng
Zhang, Nanlin
Chen, Weiyu
Liu, Pingli
Wu, Lin
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  orcidid: 0000-0001-6171-5999
  surname: Zhang
  fullname: Zhang, Nanlin
  organization: Computing Center for Geotechnical Engineering, Zhejiang University, Research Center of Coastal and Urban Geotechnical Engineering, Zhejiang University, Engineering Research Center of Urban Underground Development of Zhejiang Province, Department of Chemical and Petroleum Engineering, University of Calgary, State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University
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  surname: Luo
  fullname: Luo, Zhifeng
  organization: State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University
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  givenname: Zhangxin
  surname: Chen
  fullname: Chen, Zhangxin
  organization: Department of Chemical and Petroleum Engineering, University of Calgary
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  givenname: Fushen
  surname: Liu
  fullname: Liu, Fushen
  email: fushenliu@zju.edu.cn
  organization: Computing Center for Geotechnical Engineering, Zhejiang University, Research Center of Coastal and Urban Geotechnical Engineering, Zhejiang University, Engineering Research Center of Urban Underground Development of Zhejiang Province
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  fullname: Liu, Pingli
  organization: State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University
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  surname: Chen
  fullname: Chen, Weiyu
  organization: State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University
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  givenname: Lin
  surname: Wu
  fullname: Wu, Lin
  organization: Institute of Subsurface Energy Systems, Clausthal University of Technology
– sequence: 8
  givenname: Liqiang
  surname: Zhao
  fullname: Zhao, Liqiang
  organization: State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University
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Keywords Coupled THMC processes
Multi-physics models
Rock mass
Numerical methods
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SubjectTerms Chemical reactions
Complex Fluids and Microfluidics
Coupling
Deformation
Engineering
Experimental methods
Failure
Foundations
Geoengineering
Geotechnical Engineering & Applied Earth Sciences
Heat
Hydraulics
Mathematical models
Mechanical properties
Mechanics
Mineral resources
Numerical analysis
Numerical methods
Permeability
Phase transitions
Physics
Pore pressure
Precipitation
Radiation
Research methodology
Review Paper
Rock
Rock masses
Rocks
Soft and Granular Matter
Soil Science & Conservation
Solid Mechanics
Structural failure
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